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Selective and Reversible Approaches Toward Imaging Redox Signaling Using Small-Molecule Probes

机译:使用小分子探针成像氧化还原信号的选择性和可逆方法

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Significance: Recent research has identified key roles for reactive oxygen species (ROS)/reactive nitrogen species (RNS) in redox signaling, but much remains to be uncovered. Molecular imaging tools to study these processes must not only be selective to enable identification of the ROS/RNS involved but also reversible to distinguish signaling processes from oxidative stress. Fluorescent sensors offer the potential to image such processes with high spatial and temporal resolution. Recent Advances: A broad array of strategies has been developed that enable the selective sensing of ROS/RNS. More recently, attention has turned to the design of reversible small-molecule sensors of global redox state, with a further set of probes capable of reversible sensing of individual ROS/RNS. Critical Issues: In this study, we discuss the key challenges in achieving simultaneous detection of reversible oxidative bursts with unambiguous determination of a particular ROS/RNS. Future Directions: We have highlighted key design features of small-molecule probes that show promise in enabling the study of redox signaling, identifying essential parameters that must be assessed for any new probe.
机译:启示:最近的研究已经确定了活性氧(ROS)/活性氮(RNS)在氧化还原信号传导中的关键作用,但仍有很多尚未发现。用于研究这些过程的分子成像工具不仅必须具有选择性,以能够识别所涉及的ROS / RNS,而且还必须具有可逆性,以区分信号过程与氧化应激。荧光传感器提供了以高空间和时间分辨率对此类过程进行成像的潜力。最新进展:已经开发了多种策略,可以选择性地检测ROS / RNS。最近,注意力转向了具有全局氧化还原状态的可逆小分子传感器的设计,其中另一组探针能够对单个ROS / RNS进行可逆传感。关键问题:在这项研究中,我们讨论了在明确检测特定ROS / RNS的同时实现可逆氧化猝发的同时检测中的关键挑战。未来方向:我们重点介绍了小分子探针的关键设计特征,这些特征在开展氧化还原信号研究,确定必须对任何新探针进行评估的基本参数方面显示出了希望。

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